A JWST Survey of the Supernova Remnant Cassiopeia A
arXiv:2401.02477 · doi:10.3847/2041-8213/ad324b
Abstract
We present initial results from a JWST survey of the youngest Galactic core-collapse supernova remnant Cassiopeia A (Cas A), made up of NIRCam and MIRI imaging mosaics that map emission from the main shell, interior, and surrounding circumstellar/interstellar material (CSM/ISM). We also present four exploratory positions of MIRI/MRS IFU spectroscopy that sample ejecta, CSM, and associated dust from representative shocked and unshocked regions. Surprising discoveries include: 1) a web-like network of unshocked ejecta filaments resolved to 0.01 pc scales exhibiting an overall morphology consistent with turbulent mixing of cool, low-entropy matter from the progenitor's oxygen layer with hot, high-entropy matter heated by neutrino interactions and radioactivity, 2) a thick sheet of dust-dominated emission from shocked CSM seen in projection toward the remnant's interior pockmarked with small (approximately one arcsecond) round holes formed by knots of high-velocity ejecta that have pierced through the CSM and driven expanding tangential shocks, 3) dozens of light echoes with angular sizes between 0.1 arcsecond to 1 arcminute reflecting previously unseen fine-scale structure in the ISM. NIRCam observations place new upper limits on infrared emission from the neutron star in Cas A's center and tightly constrain scenarios involving a possible fallback disk. These JWST survey data and initial findings help address unresolved questions about massive star explosions that have broad implications for the formation and evolution of stellar populations, the metal and dust enrichment of galaxies, and the origin of compact remnant objects.
27 pages, 10 figures, now published in ApJL
References in corpus (47)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- The Near-Infrared Spectrograph (NIRSpec) on the James Webb Space Telescope I. Overview of the instrument and its capabilities
- The effect of massive binaries on stellar populations and supernova progenitors
- The James Webb Space Telescope Mission
- Dust Formation and Survival in Supernova Ejecta
- NIRCam Performance on JWST In Flight
- A Debris Disk Around An Isolated Young Neutron Star
- The Cassiopeia A Supernova was of Type IIB
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- Asymmetries in core-collapse supernovae from maps of radioactive Ti in CassiopeiaA
- Three-Dimensional Simulations of Core-Collapse Supernovae: From Shock Revival to Shock Breakout
- Freshly Formed Dust in the Cassiopeia A Supernova Remnant as Revealed by the Spitzer Space Telescope
- JWST MIRI flight performance: The Medium-Resolution Spectrometer
- One Relation for All Wavelengths: The Far-Ultraviolet to Mid-Infrared Milky Way Spectroscopic R(V) Dependent Dust Extinction Relationship
- Scattered-Light Echoes from the Historical Galactic Supernovae Cassiopeia A and Tycho (SN 1572)
- The dust mass in Cassiopeia A from a spatially resolved Herschel analysis
- The distribution of radioactive Ti in Cassiopeia A
- Fast Variability of Nonthermal X-Ray Emission in Cassiopeia A: Probing Electron Acceleration in Reverse-Shocked Ejecta
- CCOs and the hidden magnetic field scenario
- Central Compact Objects in Supernova Remnants
- The Bubble-like Interior of the Core-Collapse Supernova Remnant Cassiopeia A
- SNEWS 2.0: A Next-Generation SuperNova Early Warning System for Multi-messenger Astronomy
- Infrared Echoes near the Supernova Remnant Cassiopeia A
- Interstellar and Ejecta Dust in the Cas A Supernova Remnant
- Spitzer IRAC Images and Sample Spectra of Cassiopeia A's Explosion
- A dedicated Chandra ACIS observation of the central compact object in the Cassiopeia A supernova remnant
- Matter Mixing in Aspherical Core-collapse Supernovae: Three-dimensional Simulations with Single Star and Binary Merger Progenitor Models for SN 1987A
- The Density and Mass of Unshocked Ejecta in Cassiopeia A through Low Frequency Radio Absorption
- The Polar Regions of Cassiopeia A: The Aftermath of a Gamma Ray Burst?
- Evidence for past interaction with an asymmetric circumstellar shell in the young SNR Cassiopeia A
- Infrared Echoes Reveal the Shock Breakout of the Cas A Supernova
- Do Central Compact Objects have Carbon Atmospheres?
- A Search for Fallback Disks in Four Young Supernova Remnants
- The mass, location and heating of the dust in the Cassiopeia A supernova remnant
- High-entropy ejecta plumes in Cassiopeia A from neutrino-driven convection
- Structure of the interstellar medium around Cas A
- The cooling of the Central Compact Object in Cas A from 2006 to 2020
- Dust survival rates in clumps passing through the Cas A reverse shock -- II. The impact of magnetic fields
- Dust destruction and survival in the Cassiopeia A reverse shock
- Near-Infrared Knots and Dense Fe Ejecta in the Cassiopeia A Supernova Remnant
- Constraints on neutron star superfluidity from the cooling neutron star in Cassiopeia A using all Chandra ACIS-S observations
- Detection of Pristine Circumstellar Material of the Cassiopeia A Supernova
- Titanium and Iron in the Cassiopeia A Supernova Remnant
- X-ray diagnostics of Cassiopeia A's "Green Monster": evidence for dense shocked circumstellar plasma
- He abundance of Dense Circumstellar Clumps in the Cassiopeia A Supernova Remnant
- Probing Interstellar Dust with Infrared Echoes from the Cas A Supernova
Cited by in corpus (15)
- A 3D Simulation of a Type II-P Supernova: from Core Bounce to Beyond Shock Breakout
- Discovery of 2200 new supernova remnants in 19 nearby star-forming galaxies with MUSE spectroscopy
- Luminous Type II Short-Plateau SN 2023ufx: Asymmetric Explosion of a Partially-Stripped Massive Progenitor
- Modelling the evolution and influence of dust in cosmological simulations that include the cold phase of the interstellar medium
- The Demographics of Binary Companions to Stripped-Envelope Supernovae: Confronting Observations with Population Synthesis
- Filamentary Ejecta Network in Cassiopeia~A Reveals Fingerprints of the Supernova Explosion Mechanism
- Large Cold Dust Reservoir Revealed in Transitional SN Ib 2014C by James Webb Space Telescope Mid-Infrared Spectroscopy
- Kinematics of Supernova Remnants Using Multiepoch Maximum Likelihood Estimation: Chandra Observation of Cassiopeia A as an Example
- Cosmic ray transport and acceleration with magnetic mirroring
- JWST/MIRI detects the dusty SN1993J about 30 years after explosion
- An axisymmetric shock breakout indicated by prompt polarized emission from the type II supernova 2024ggi
- A First-look at Spatially-resolved Infrared Supernova Remnants in M33 with JWST
- Production of heavy -elements and Ti in Cas A: comparison to abundances from 1D core-collapse supernova models and evidence for Carbon-Oxygen shell mergers
- An infrared echo from a circumstellar disk in the hydrogen- and helium-poor SN 2024aecx
- Decadal brightening in the northeastern non-thermal filament of Cassiopeia A